首页> 外文期刊>The biochemical journal >Molecular and structural transmembrane determinants critical for embedding claudin-5 into tight junctions reveal a distinct four-helix bundle arrangement
【24h】

Molecular and structural transmembrane determinants critical for embedding claudin-5 into tight junctions reveal a distinct four-helix bundle arrangement

机译:对于将claudin-5嵌入紧密连接至关重要的分子和结构跨膜决定子显示出独特的四螺旋束排列

获取原文
           

摘要

pThe mechanism of TJ (tight junction) assembly and the structure of TJ strand-forming Cldns (claudins) are unclear. To identify determinants of assembly of blood–brain barrier-related Cldn3 and Cldn5, chimaeric mutants were analysed by cellular reconstitution of TJ strands and live-cell imaging. On the basis of the rescue of mutants deficient for strand formation, we identified Cldn5 residues (Cyssup128/sup, Alasup132/sup, Ilesup142/sup, Alasup163/sup, Ilesup166/sup and Leusup174/sup) involved in Cldn folding and assembly. Experimental results were combined with structural bioinformatics approaches. Initially the experimentally validated previous model of the ECL2 (extracellular loop 2) of Cldn5 was extended to the flanking transmembrane segments (TM3/TM4). A coiled-coil interface probably caused by alternating small and large residues is supported by concomitant knob-into-hole interactions including Cldn5-specific residues identified in the present paper. To address arrangement of the TMs in a four-helix bundle, data from evolutionary sequence couplings and comparative modelling of intramolecular interfaces in the transmembrane region of Cldns led to a complete Cldn5 model. Our suggested Cldn subtype-specific intramolecular interfaces that are formed by conserved coiled-coil motifs and non-conserved residues in distinct TM positions were confirmed by the recently released crystal structure of Cldn15. The identified molecular and structural determinants essentially contribute to assembly of Cldns into TJ strands./p
机译:>目前尚不清楚TJ(紧密连接)组装的机制和TJ链形成Cldns(claudins)的结构。为了确定与血脑屏障有关的Cldn3和Cldn5装配的决定因素,通过TJ链的细胞重建和活细胞成像分析了嵌合突变体。在挽救缺乏链形成的突变体的基础上,我们鉴定了Cldn5残基(Cys 128 ,Ala 132 ,Ile 142 ,Ala < sup> 163 ,Ile 166 和Leu 174 )参与了Cldn的折叠和组装。实验结果与结构生物信息学方法相结合。最初,经过实验验证的Cldn5的ECL2(细胞外环2)模型已扩展到侧翼跨膜片段(TM3 / TM4)。可能由大小不一的残渣交替引起的螺旋线圈界面由伴随的旋钮-孔间相互作用(包括本文确定的Cldn5特异性残基)支持。为了解决四螺旋束中TM的排列问题,来自进化序列偶联的数据以及Cldns跨膜区域内分子内界面的比较建模得出了完整的Cldn5模型。我们最近提出的Cldn15晶体结构证实了我们建议的由保守的卷曲螺旋基序和不同保守的TM位置的非保守残基形成的Cldn亚型特异性分子内界面。鉴定出的分子和结构决定因素基本上有助于Cldns组装成TJ链。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号